Full-automatic constant temperature ironing table
The fully automatic constant temperature ironing board's active suction system and laser signal control solve the problem of poor ironing results for thick clothes, achieving efficient steam penetration and improved ironing efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- HANGZHOU PINK DOG CLOTHING CO LTD
- Filing Date
- 2025-07-10
- Publication Date
- 2026-05-29
AI Technical Summary
Existing ironing devices have low heat steam penetration when handling thick clothes, resulting in poor ironing effect and efficiency.
It adopts a fully automatic constant temperature ironing board, combined with an active air suction system and laser signal control. Through the cooperation of a turbine fan and a micro electromagnetic pump, it achieves efficient air suction corresponding to the position of the steam iron, thereby improving the steam penetration rate.
It effectively improves the ironing effect and efficiency of thick clothes, increases steam penetration rate, and reduces the generation of ineffective suction.
Smart Images

Figure CN224299672U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of ironing table technology, and in particular to a fully automatic constant temperature ironing table. Background Technology
[0002] The existing patent publication number (CN206581053U) discloses an automatic garment steam ironing device, including a frame, support column, control box, and control buttons. A work platform is mounted on the frame, and an iron is mounted on the work platform. A steam outlet connector is located on the bottom side of the iron, and a steam outlet switch is installed on the iron. A steam outlet pipe is located at the end of the iron. The advantages are: this device, through a feedback control loop composed of a temperature sensor, a control host, and a thermostat, can ensure a constant temperature of the emitted steam, avoiding damage to clothing from excessively hot steam. Furthermore, the user can view the steam temperature information in real time on the display screen, making it convenient to use.
[0003] However, we know that the principle of ironing is to heat-set the fibers of clothing through heat pressure. There are three important elements: water vapor, heat, and pressure. The heating plate under the electric iron sprays out hot steam during the downward pressing process. However, for thicker clothes, the downward penetration of hot steam is not very effective, so it is necessary to iron several times, such as jeans. Ordinary shirts are usually smooth after one ironing. In order to improve the penetration rate of hot steam and improve the ironing effect and efficiency, this solution is proposed. Utility Model Content
[0004] A fully automatic constant temperature ironing table includes an integrated electrical control box for power supply control and signal connection control;
[0005] An ironing table is fixed above the integrated electrical control box. Several suction units are arranged in an array inside the ironing table, and a sealed cavity is provided below the suction unit and connected to a turbine fan. After the turbine fan draws air, it causes the cavity to be drawn into negative pressure. A vertical communication channel is provided between the suction unit and the cavity, and a valve body for controlling the opening and closing is provided in the communication channel. The valve body is connected to the integrated electrical control box through an electrical control signal line and is controlled by it.
[0006] A steam iron and a power supply and steam generator compatible with the steam iron (the prior art will not be described in detail).
[0007] A laser signal receiving board is fixedly mounted on the ironing table via a bracket. The lower end face of the laser signal receiving board is integrated with laser signal receiving units that are the same number as the suction units and are vertically corresponding to them. A laser signal transmitter is custom-installed on the steam iron to emit laser signals vertically upward to report its relative position on the ironing table.
[0008] Preferably, the top of the ironing table is an ironing tabletop fabric covering layer, and a porous partition layer is provided below the ironing tabletop fabric covering layer. Below the porous partition layer, there are several arrays of unit air intake holes. A negative pressure clamping layer is also provided inside the ironing table, and the negative pressure clamping layer is connected to the turbine fan. The negative pressure clamping layer and each of the unit air intake holes are connected by a vertical channel, and a miniature electromagnetic pump is sealed in the channel. The miniature electromagnetic pump is controlled by the integrated electrical control box via a signal line.
[0009] Preferably, the unit air intake hole is square and its side length is the same as the length of the steam iron, so that the steam iron can achieve full coverage air intake when it is within the range of a single unit air intake hole.
[0010] Preferably, the laser signal receiving units in the laser signal receiving board are connected in parallel and establish a signal connection with the integrated electrical control box through a control signal transmission harness. After the steam iron moves to a certain position, the laser signal transmitter emits a real-time laser signal to the corresponding laser signal receiving unit and transmits it to the integrated electrical control box through an independent signal line corresponding to the laser signal receiving unit. The integrated electrical control box then turns on the miniature electromagnetic pump contained in the vertically corresponding unit's air intake hole, so that the air intake of the turbine fan is efficiently concentrated for the part below the steam iron.
[0011] Preferably, in order to improve the air intake continuity of the steam iron during movement, after the steam iron moves to a certain position, the laser signal transmitter emits a real-time laser signal to the corresponding laser signal receiving unit and transmits it to the integrated electrical control box through an independent signal line corresponding to the laser signal receiving unit. The integrated electrical control box then activates the miniature electromagnetic pumps contained in the air intake holes of the unit perpendicular to it and around it.
[0012] The advantages and positive effects of this utility model are:
[0013] By adopting an active air intake method on the ironing board, the downward penetration rate of steam during ironing is improved, effectively enhancing the ironing effect and efficiency of thick clothes.
[0014] Furthermore, we adopt a modular design and utilize laser signal transmission and position reception to enable the controller to control the vertical position of the iron for individual suction. This ensures that the effective suction of the turbine fan is provided to the correct area, reducing ineffective suction in areas not being pressed by the steam iron. Attached Figure Description
[0015] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0016] Figure 1 This is a schematic diagram of the structure of this utility model;
[0017] Figure 2 This is a schematic diagram of the structure of this utility model (removing the fabric covering layer 14 of the ironing table and disassembling the porous partition layer 17).
[0018] Figure 3 This is a schematic diagram of the internal structure of the ironing table 13 in this utility model.
[0019] The following are labels in the attached diagram: 10. Laser signal receiving board; 11. Support frame; 12. Control signal transmission harness; 13. Ironing table; 14. Ironing table surface fabric covering layer; 15. Steam iron; 16. Laser signal transmitter; 17. Porous partition layer; 18. Unit air intake countersunk hole; 19. Miniature electromagnetic pump; 20. Turbine fan; 21. Negative pressure sandwich layer; 22. Integrated electrical control box. Detailed Implementation
[0020] The present invention will now be described in further detail with reference to the accompanying drawings. These drawings are simplified schematic diagrams, illustrating only the basic structure of the present invention, and therefore only show the components relevant to the present invention.
[0021] If the embodiments of this application contain terms relating to directional indications or positional relationships (such as up, down, left, right, front, back, inside, outside, top, bottom, center, vertical, horizontal, longitudinal, transverse, length, width, counterclockwise, clockwise, axial, radial, circumferential, etc.), such terms are only used to explain the relative positional relationships and movement of the components in a specific posture (as shown in the accompanying drawings); if the specific posture changes, the directional indications or positional relationships will also change accordingly. Furthermore, the terms "first" and "second" used in the embodiments of this application are only for descriptive convenience and should not be construed as indicating or implying relative importance. The embodiments of this utility model will be further described in detail below with reference to the accompanying drawings:
[0022] like Figure 1-3 As shown, the fully automatic constant temperature ironing table of this utility model includes an integrated electrical control box 22 for power supply control and signal connection control;
[0023] An ironing table 13 is fixed above the integrated electrical control box 22. Several suction units are arranged in an array inside the ironing table 13, and a sealed cavity is provided below the suction unit and connected to a turbine fan 20. After the turbine fan 20 draws air, the cavity is drawn into negative pressure. A vertical communication channel is provided between the suction unit and the cavity, and a valve body for controlling the opening and closing is provided in the communication channel. The valve body is connected to the integrated electrical control box 22 through an electrical control signal line and is controlled by it.
[0024] Steam iron 15 and power supply and steam generation device associated with the steam iron 15 (the prior art will not be described in detail).
[0025] A laser signal receiving board 10 is fixedly installed above the ironing table 13 via a bracket 11. The lower end face of the laser signal receiving board 10 is integrated with laser signal receiving units that are the same number as the suction units and are vertically corresponding. A laser signal transmitter 16 is custom-installed on the steam iron 15 to emit laser signals vertically upward to report its relative position on the ironing table 13.
[0026] Preferably, the top of the ironing table 13 is an ironing tabletop fabric covering layer 14, and a porous partition layer 17 is provided below the ironing tabletop fabric covering layer 14. Below the porous partition layer 17, there are several arrays of unit air intake holes 18. A negative pressure clamping layer 21 is also provided inside the ironing table 13, and the negative pressure clamping layer 21 is connected to the turbine fan 20. The negative pressure clamping layer 21 and each of the unit air intake holes 18 are connected by a vertical channel, and a micro electromagnetic pump 19 is sealed in the channel. The micro electromagnetic pump 19 is controlled by the integrated electrical control box 22 through a signal line.
[0027] Preferably, the unit air intake hole 18 is square and its side length is the same as the length of the steam iron 15, so that when the steam iron 15 is within the range of a single unit air intake hole 18, it can achieve comprehensive air intake.
[0028] Preferably, the laser signal receiving units in the laser signal receiving board 10 are connected in parallel and establish a signal connection with the integrated electrical control box 22 through the control signal transmission harness 12. After the steam iron 15 moves to a certain position, the laser signal transmitter 16 transmits a real-time laser signal to the corresponding laser signal receiving unit and transmits it to the integrated electrical control box 22 through an independent signal line corresponding to the laser signal receiving unit. The integrated electrical control box 22 turns on the miniature electromagnetic pump 19 contained in the vertically corresponding unit suction hole 18, so that the suction of the turbine fan 20 will be efficiently concentrated for the part below the steam iron 15.
[0029] Preferably, to improve the continuity of air intake during the movement of the steam iron 15, after the steam iron 15 moves to a certain position, the laser signal transmitter 16 emits a real-time laser signal to the corresponding laser signal receiving unit and transmits it to the integrated control box 22 through an independent signal line corresponding to the laser signal receiving unit. The integrated control box 22 then activates the miniature electromagnetic pumps 19 contained in the unit air intake holes 18 that are perpendicular to and around the unit. (Alternatively, a nine-square grid centered on the miniature electromagnetic pump 19 that is triggered by the laser, i.e., all nine miniature electromagnetic pumps 19, can be activated simultaneously to ensure the continuity of air intake during the movement of the steam iron 15, and even in this way, the air intake efficiency can still be improved.)
[0030] Specifically, the term "fully automatic" in this application refers only to the automatic adjustment of the inhalation position within the 13 through the normal movement of the 15.
[0031] The structure of the steam iron 15 and the laser signal transmitter 16 is a customized product that fixes 16 to the plastic shell of 15 based on existing technology principles, and can be manufactured entirely according to existing production technology.
[0032] It should be emphasized that the embodiments described in this utility model are illustrative rather than limiting. Therefore, this utility model is not limited to the embodiments described in the specific implementation. Any other implementation methods derived by those skilled in the art based on the technical solutions of this utility model are also within the scope of protection of this utility model.
Claims
1. A fully automatic constant temperature ironing table, comprising an integrated electrical control box (22) for power supply control and signal connection control; characterized in that: An ironing table (13) is fixed above the integrated electrical control box (22). Several suction units are arranged in an array inside the ironing table (13), and a sealed cavity is provided below the suction unit and connected to a turbine fan (20). After the turbine fan (20) draws air, the cavity is drawn to negative pressure. A vertical communication channel is provided between the suction unit and the cavity, and a valve body for controlling the opening and closing is provided in the communication channel. The valve body is connected to the integrated electrical control box (22) through an electrical control signal line and is controlled by it. A steam iron (15) and a power supply and steam generator for use with the steam iron (15); A laser signal receiving board (10) is fixedly mounted on the ironing table (13) via a bracket (11). The lower end face of the laser signal receiving board (10) is integrated with laser signal receiving units that are the same number as the suction units and are vertically corresponding. A laser signal transmitter (16) is custom-installed on the steam iron (15) to emit laser signals vertically upward to report its relative position on the ironing table (13).
2. The fully automatic constant temperature ironing board according to claim 1, characterized in that: The top of the ironing table (13) is an ironing tabletop fabric covering layer (14). Below the ironing tabletop fabric covering layer (14) is a porous partition layer (17). Below the porous partition layer (17) are several arrays of unit air intake holes (18). Inside the ironing table (13) is a negative pressure sandwich layer (21) and the negative pressure sandwich layer (21) is connected to the turbine fan (20). The negative pressure sandwich layer (21) and each of the unit air intake holes (18) are connected by a vertical channel and a micro electromagnetic pump (19) is sealed in the channel. The micro electromagnetic pump (19) is controlled by the integrated electrical control box (22) through a signal line.
3. The fully automatic constant temperature ironing board according to claim 2, characterized in that: The unit air intake hole (18) is square and its side length is the same as the length of the steam iron (15), so that when the steam iron (15) is within the range of a single unit air intake hole (18), it can achieve full coverage air intake.
4. The fully automatic constant temperature ironing board according to claim 3, characterized in that: The laser signal receiving units in the laser signal receiving board (10) are connected in parallel and establish a signal connection with the integrated electrical control box (22) through the control signal transmission harness (12). After the steam iron (15) moves to a certain position, the laser signal transmitter (16) transmits the real-time laser signal to the corresponding laser signal receiving unit and transmits it to the integrated electrical control box (22) through the independent signal line corresponding to the laser signal receiving unit. The integrated electrical control box (22) turns on the miniature electromagnetic pump (19) contained in the vertically corresponding unit air intake hole (18). In this way, the air intake of the turbine fan (20) will be efficiently concentrated for the part below the steam iron (15).
5. The fully automatic constant temperature ironing board according to claim 4, characterized in that: In order to improve the air intake continuity of the steam iron (15) during the movement, after the steam iron (15) moves to a certain position, the laser signal transmitter (16) transmits a real-time laser signal to the corresponding laser signal receiving unit and transmits it to the integrated electrical control box (22) through an independent signal line corresponding to the laser signal receiving unit. The integrated electrical control box (22) then turns on the miniature electromagnetic pumps (19) contained in the unit air intake holes (18) that are perpendicular to it and around it.